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金鱼中类固醇敏感的 kiss2 神经元:对表达 kisspeptin 基因的神经元的重复的进化见解。

Steroid sensitive kiss2 neurones in the goldfish: evolutionary insights into the duplicate kisspeptin gene-expressing neurones.

机构信息

Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, Japan.

出版信息

J Neuroendocrinol. 2012 Jun;24(6):897-906. doi: 10.1111/j.1365-2826.2012.02296.x.

Abstract

The KISS1/Kiss1/kiss1 gene product kisspeptin is suggested to be involved in the steroid feedback system in vertebrates. In addition to kiss1, kiss2 has been identified in many vertebrates, including some mammals, suggesting that the both genes were originally expressed in the common ancestor of teleosts and tetrapods. Moreover, peptides from both genes have been shown to activate the kisspeptin receptors. To investigate the involvement of kiss1 or kiss2 neurones in steroid feedback, we used a seasonal breeder, the goldfish (Carassius auratus). We found that kiss2 is expressed in the preoptic area (POA), nucleus lateralis tuberis and nucleus recessus lateralis, and that kiss1 is expressed in the habenula. Greater mRNA expression in breeding than in nonbreeding condition animals and conspicuous up-regulation of gene expression by gonadal steroids was seen only in the kiss2 neurones of the POA. Furthermore, double in situ hybridisation suggested that these neurones express oestrogen receptors. Given that amphibians express kiss2 in POA and mammalian anteroventral periventricular nucleus/POA Kiss1 neurones show similar expression dynamics as goldfish POA Kiss2 neurones, we hypothesise that kiss1 and kiss2 share the same evolutionary origin; and, after the loss of kiss2, kiss1 became active for steroid feedback in mammals.

摘要

KISS1/Kiss1/kiss1 基因产物 kisspeptin 被认为参与脊椎动物的类固醇反馈系统。除了 kiss1,许多脊椎动物(包括一些哺乳动物)中也鉴定出了 kiss2,这表明这两个基因最初在硬骨鱼和四足动物的共同祖先中表达。此外,这两个基因的肽段都被证明可以激活 kisspeptin 受体。为了研究 kiss1 或 kiss2 神经元在类固醇反馈中的作用,我们使用了一种季节性繁殖的鱼类,金鱼(Carassius auratus)。我们发现 kiss2 在视前区(POA)、外侧结节核和外侧隐核中表达,而 kiss1 在缰核中表达。在繁殖期动物中,mRNA 的表达高于非繁殖期动物,而且只有在 POA 的 kiss2 神经元中,性腺类固醇才会明显上调基因表达。此外,双重原位杂交表明这些神经元表达雌激素受体。鉴于两栖动物在 POA 中表达 kiss2,而哺乳动物前脑室下核/POA Kiss1 神经元的表达动态与金鱼 POA Kiss2 神经元相似,我们假设 kiss1 和 kiss2 具有相同的进化起源;并且,在 kiss2 丢失后,kiss1 在哺乳动物中成为类固醇反馈的活性物质。

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